<?xml version="1.0" encoding="UTF-8"?>
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  <record>
    <bias-circuit-power-consumption nil="true"></bias-circuit-power-consumption>
    <channels type="integer">0</channels>
    <created-at type="datetime">2009-06-04T09:33:54-07:00</created-at>
    <datasheet-path></datasheet-path>
    <dc-extinction-ratio nil="true"></dc-extinction-ratio>
    <delay nil="true"></delay>
    <description>&lt;p&gt;The GX6134 generates an RZ format from an &lt;span class="caps"&gt;NRZ&lt;/span&gt; data stream and clock signal, and is optimized for 11.1-Gb/s long-haul applications employing LiNbO3 modulators. It maintains peak-to-peak jitter of less than 10 ps over its operational temperature range, and is housed in a 7 mm x 8 mm ceramic surface mount package that has impedance-matched transitions to ensure signal integrity.&lt;/p&gt;</description>
    <form>QFN</form>
    <function>EA</function>
    <gain></gain>
    <hidden type="boolean">false</hidden>
    <id type="integer">64</id>
    <image-path></image-path>
    <input nil="true"></input>
    <input-coupling>AC</input-coupling>
    <insertion-loss nil="true"></insertion-loss>
    <lavg nil="true"></lavg>
    <lbias nil="true"></lbias>
    <name>NRZ-RZ Convertor and EO Driver</name>
    <new-part nil="true"></new-part>
    <notes></notes>
    <output>AC</output>
    <pdiss>1.2W</pdiss>
    <power>5V</power>
    <product-number>GX6134</product-number>
    <s11 nil="true"></s11>
    <s22 nil="true"></s22>
    <segment></segment>
    <speed>10G</speed>
    <status>Dev</status>
    <temp-range>0-75C</temp-range>
    <three-db-bw nil="true"></three-db-bw>
    <updated-at type="datetime">2009-06-04T11:48:53-07:00</updated-at>
    <vout>1.5-3.3Vpp</vout>
    <vpi-3khz nil="true"></vpi-3khz>
    <wavelength-range nil="true"></wavelength-range>
    <web-access></web-access>
  </record>
  <record>
    <bias-circuit-power-consumption nil="true"></bias-circuit-power-consumption>
    <channels type="integer">1</channels>
    <created-at type="datetime">2009-02-19T10:38:20-08:00</created-at>
    <datasheet-path></datasheet-path>
    <dc-extinction-ratio nil="true"></dc-extinction-ratio>
    <delay nil="true"></delay>
    <description>&lt;p&gt;The GX3440 is a &lt;span class="caps"&gt;MMIC&lt;/span&gt; limiter amplifier for use in 40Gb/s optical communications systems. Signals at levels as low as +/-25 mVpp differential can be amplified up to 0.7 Vpp differentially. The design allows an eye crossing control, output voltage control, and output DC level  monitoring.&lt;/p&gt;</description>
    <form>Die</form>
    <function>Limiting</function>
    <gain>28dB</gain>
    <hidden type="boolean">false</hidden>
    <id type="integer">56</id>
    <image-path></image-path>
    <input>25mVpp</input>
    <input-coupling nil="true"></input-coupling>
    <insertion-loss nil="true"></insertion-loss>
    <lavg nil="true"></lavg>
    <lbias nil="true"></lbias>
    <name>45Gb/s Limiting Amplifier</name>
    <new-part nil="true"></new-part>
    <notes></notes>
    <output nil="true"></output>
    <pdiss>500mW</pdiss>
    <power>-3.3V</power>
    <product-number>GX3440</product-number>
    <s11 nil="true"></s11>
    <s22 nil="true"></s22>
    <segment>Telecom</segment>
    <speed>45G</speed>
    <status>Production</status>
    <temp-range>0-85</temp-range>
    <three-db-bw nil="true"></three-db-bw>
    <updated-at type="datetime">2009-07-22T11:44:37-07:00</updated-at>
    <vout>700mV</vout>
    <vpi-3khz nil="true"></vpi-3khz>
    <wavelength-range nil="true"></wavelength-range>
    <web-access>Telecom</web-access>
  </record>
  <record>
    <bias-circuit-power-consumption nil="true"></bias-circuit-power-consumption>
    <channels type="integer">1</channels>
    <created-at type="datetime">2008-09-29T13:00:37-07:00</created-at>
    <datasheet-path></datasheet-path>
    <dc-extinction-ratio nil="true"></dc-extinction-ratio>
    <delay nil="true"></delay>
    <description>&lt;p&gt;The GX6120 is an external driver for Electro-Absorption (EA) modulators operating at data rates up to 11.3 Gb/s. It supports EAMs used in metro and long-haul OC-192 optical modules and line cards.&lt;/p&gt;</description>
    <form>QFN</form>
    <function>EA</function>
    <gain></gain>
    <hidden type="boolean">false</hidden>
    <id type="integer">2</id>
    <image-path>http://s48731.gridserver.com/images/products/GX6120.jpg</image-path>
    <input nil="true"></input>
    <input-coupling>AC</input-coupling>
    <insertion-loss nil="true"></insertion-loss>
    <lavg nil="true"></lavg>
    <lbias nil="true"></lbias>
    <name>11.3Gb/s EAM Driver IC</name>
    <new-part nil="true"></new-part>
    <notes></notes>
    <output>AC</output>
    <pdiss>580mW</pdiss>
    <power>3.3V</power>
    <product-number>GX6120</product-number>
    <s11 nil="true"></s11>
    <s22 nil="true"></s22>
    <segment>Telecom/Datacom</segment>
    <speed>10G</speed>
    <status>Production</status>
    <temp-range>0-95C</temp-range>
    <three-db-bw nil="true"></three-db-bw>
    <updated-at type="datetime">2008-11-21T19:11:10-08:00</updated-at>
    <vout>1-2.5Vpp</vout>
    <vpi-3khz nil="true"></vpi-3khz>
    <wavelength-range nil="true"></wavelength-range>
    <web-access>Telecom/Datacom</web-access>
  </record>
  <record>
    <bias-circuit-power-consumption nil="true"></bias-circuit-power-consumption>
    <channels type="integer">1</channels>
    <created-at type="datetime">2008-09-29T13:00:37-07:00</created-at>
    <datasheet-path></datasheet-path>
    <dc-extinction-ratio nil="true"></dc-extinction-ratio>
    <delay nil="true"></delay>
    <description>&lt;p&gt;The GX6120 is an external driver for Electro-Absorption (EA) modulators operating at data rates up to 11.3 Gb/s. It supports EAMs used in metro and long-haul OC-192 optical modules and line cards.&lt;/p&gt;</description>
    <form>Die</form>
    <function>EA</function>
    <gain></gain>
    <hidden type="boolean">false</hidden>
    <id type="integer">38</id>
    <image-path></image-path>
    <input nil="true"></input>
    <input-coupling>AC</input-coupling>
    <insertion-loss nil="true"></insertion-loss>
    <lavg nil="true"></lavg>
    <lbias nil="true"></lbias>
    <name>11.3Gb/s EAM Driver Die</name>
    <new-part nil="true"></new-part>
    <notes></notes>
    <output>AC</output>
    <pdiss>580mW</pdiss>
    <power>3.3V</power>
    <product-number>GX6120D</product-number>
    <s11 nil="true"></s11>
    <s22 nil="true"></s22>
    <segment>Telecom/Datacom</segment>
    <speed>10G</speed>
    <status>Production</status>
    <temp-range>0-95C</temp-range>
    <three-db-bw nil="true"></three-db-bw>
    <updated-at type="datetime">2008-11-21T19:11:36-08:00</updated-at>
    <vout>1-2.5Vpp</vout>
    <vpi-3khz nil="true"></vpi-3khz>
    <wavelength-range nil="true"></wavelength-range>
    <web-access>Telecom/Datacom</web-access>
  </record>
  <record>
    <bias-circuit-power-consumption nil="true"></bias-circuit-power-consumption>
    <channels type="integer">1</channels>
    <created-at type="datetime">2008-09-29T13:00:37-07:00</created-at>
    <datasheet-path></datasheet-path>
    <dc-extinction-ratio nil="true"></dc-extinction-ratio>
    <delay nil="true"></delay>
    <description>&lt;p&gt;The GX6155 is a high-performance &lt;span class="caps"&gt;NRZ&lt;/span&gt; modulator driver for metro and long-haul LiNbO3 optical transmitters.&lt;/p&gt;</description>
    <form>SMD</form>
    <function>MZ</function>
    <gain></gain>
    <hidden type="boolean">false</hidden>
    <id type="integer">40</id>
    <image-path>http://s48731.gridserver.com/images/products/GX6155.jpg</image-path>
    <input nil="true"></input>
    <input-coupling>AC</input-coupling>
    <insertion-loss nil="true"></insertion-loss>
    <lavg nil="true"></lavg>
    <lbias nil="true"></lbias>
    <name>12.5Gb/s NRZ  Modulator Driver</name>
    <new-part nil="true"></new-part>
    <notes></notes>
    <output>AC</output>
    <pdiss>1.05W</pdiss>
    <power>5V</power>
    <product-number>GX6155</product-number>
    <s11 nil="true"></s11>
    <s22 nil="true"></s22>
    <segment>Telecom</segment>
    <speed>10G</speed>
    <status>Production</status>
    <temp-range>0-85C</temp-range>
    <three-db-bw nil="true"></three-db-bw>
    <updated-at type="datetime">2009-02-19T10:20:05-08:00</updated-at>
    <vout>3-6.5Vpp</vout>
    <vpi-3khz nil="true"></vpi-3khz>
    <wavelength-range nil="true"></wavelength-range>
    <web-access>Telecom</web-access>
  </record>
  <record>
    <bias-circuit-power-consumption nil="true"></bias-circuit-power-consumption>
    <channels type="integer">1</channels>
    <created-at type="datetime">2008-09-29T13:00:37-07:00</created-at>
    <datasheet-path></datasheet-path>
    <dc-extinction-ratio nil="true"></dc-extinction-ratio>
    <delay nil="true"></delay>
    <description>&lt;p&gt;The HXR1101 meets the physical-media-dependent (&lt;span class="caps"&gt;PMD&lt;/span&gt;) functionality requirements for Optical Line Terminal (&lt;span class="caps"&gt;OLT&lt;/span&gt;) of an Ethernet Passive Optical Network (&lt;span class="caps"&gt;EPON&lt;/span&gt;), as described in the approved version of the &lt;span class="caps"&gt;IEEE&lt;/span&gt; 802.3ah specification.&lt;/p&gt;</description>
    <form>Die</form>
    <function>Limiting</function>
    <gain>115kOhm</gain>
    <hidden type="boolean">false</hidden>
    <id type="integer">11</id>
    <image-path></image-path>
    <input>2.6uApp</input>
    <input-coupling nil="true"></input-coupling>
    <insertion-loss nil="true"></insertion-loss>
    <lavg nil="true"></lavg>
    <lbias nil="true"></lbias>
    <name>1.25Gb/s Burst-Mode TIA</name>
    <new-part nil="true"></new-part>
    <notes></notes>
    <output nil="true"></output>
    <pdiss>60mW</pdiss>
    <power>3.3V</power>
    <product-number>HXR1101</product-number>
    <s11 nil="true"></s11>
    <s22 nil="true"></s22>
    <segment>Datacom</segment>
    <speed>1G</speed>
    <status>Production</status>
    <temp-range>0-95C</temp-range>
    <three-db-bw nil="true"></three-db-bw>
    <updated-at type="datetime">2008-10-22T10:59:31-07:00</updated-at>
    <vout>300mV</vout>
    <vpi-3khz nil="true"></vpi-3khz>
    <wavelength-range nil="true"></wavelength-range>
    <web-access>Datacom</web-access>
  </record>
  <record>
    <bias-circuit-power-consumption nil="true"></bias-circuit-power-consumption>
    <channels type="integer">4</channels>
    <created-at type="datetime">2008-09-29T13:00:37-07:00</created-at>
    <datasheet-path></datasheet-path>
    <dc-extinction-ratio nil="true"></dc-extinction-ratio>
    <delay nil="true"></delay>
    <description>&lt;p&gt;The HXR3104A is a member of the family of GigOptix&amp;#8217;s Optical Receiver Transmitter Array (ORTA&#65533;) product line targeted at the optical transceiver market. It is a key component for multi-channel optical transceivers.&lt;/p&gt;</description>
    <form>Die</form>
    <function>Limiting</function>
    <gain>13kOhm</gain>
    <hidden type="boolean">false</hidden>
    <id type="integer">13</id>
    <image-path></image-path>
    <input>30uApp</input>
    <input-coupling nil="true"></input-coupling>
    <insertion-loss nil="true"></insertion-loss>
    <lavg nil="true"></lavg>
    <lbias nil="true"></lbias>
    <name>4-Channel 10Gb/s TIA</name>
    <new-part nil="true"></new-part>
    <notes></notes>
    <output nil="true"></output>
    <pdiss>120mW</pdiss>
    <power>3.3V</power>
    <product-number>HXR3104</product-number>
    <s11 nil="true"></s11>
    <s22 nil="true"></s22>
    <segment></segment>
    <speed>40G</speed>
    <status>Production</status>
    <temp-range>0-95C</temp-range>
    <three-db-bw nil="true"></three-db-bw>
    <updated-at type="datetime">2008-10-22T11:00:09-07:00</updated-at>
    <vout>400mV</vout>
    <vpi-3khz nil="true"></vpi-3khz>
    <wavelength-range nil="true"></wavelength-range>
    <web-access></web-access>
  </record>
  <record>
    <bias-circuit-power-consumption nil="true"></bias-circuit-power-consumption>
    <channels type="integer">1</channels>
    <created-at type="datetime">2008-09-29T13:00:37-07:00</created-at>
    <datasheet-path></datasheet-path>
    <dc-extinction-ratio nil="true"></dc-extinction-ratio>
    <delay nil="true"></delay>
    <description>&lt;p&gt;The HXR3401C transimpedance amplifier is used for optical communications applications at up to 4.25Gb/s.&lt;/p&gt;</description>
    <form>Die</form>
    <function>Limiting</function>
    <gain>90kOhm</gain>
    <hidden type="boolean">false</hidden>
    <id type="integer">14</id>
    <image-path></image-path>
    <input>6uApp</input>
    <input-coupling nil="true"></input-coupling>
    <insertion-loss nil="true"></insertion-loss>
    <lavg nil="true"></lavg>
    <lbias nil="true"></lbias>
    <name>4.25Gb/s TIA</name>
    <new-part nil="true"></new-part>
    <notes></notes>
    <output nil="true"></output>
    <pdiss>96mW</pdiss>
    <power>3.3V</power>
    <product-number>HXR3401</product-number>
    <s11 nil="true"></s11>
    <s22 nil="true"></s22>
    <segment>Datacom</segment>
    <speed>4G</speed>
    <status>Production</status>
    <temp-range>0-95C</temp-range>
    <three-db-bw nil="true"></three-db-bw>
    <updated-at type="datetime">2008-10-29T11:14:19-07:00</updated-at>
    <vout>550mV</vout>
    <vpi-3khz nil="true"></vpi-3khz>
    <wavelength-range nil="true"></wavelength-range>
    <web-access>Datacom</web-access>
  </record>
  <record>
    <bias-circuit-power-consumption nil="true"></bias-circuit-power-consumption>
    <channels type="integer">4</channels>
    <created-at type="datetime">2008-09-29T13:00:37-07:00</created-at>
    <datasheet-path></datasheet-path>
    <dc-extinction-ratio nil="true"></dc-extinction-ratio>
    <delay nil="true"></delay>
    <description>&lt;p&gt;The HXR3404A is a member of the family of GigOptix&amp;#8217;s Optical Receiver Transmitter Array (ORTA&#65533;) product line targeted at the optical transceiver market. It is a key component for multi-channel optical transceivers such 10GBASE-LX4 in small form factor packages such as X2 and &lt;span class="caps"&gt;XPAK&lt;/span&gt;.&lt;/p&gt;</description>
    <form>Die</form>
    <function>Limiting</function>
    <gain>55kOhm</gain>
    <hidden type="boolean">false</hidden>
    <id type="integer">15</id>
    <image-path></image-path>
    <input>10uApp</input>
    <input-coupling nil="true"></input-coupling>
    <insertion-loss nil="true"></insertion-loss>
    <lavg nil="true"></lavg>
    <lbias nil="true"></lbias>
    <name>4-Channel 3.125Gb/s TIA</name>
    <new-part nil="true"></new-part>
    <notes></notes>
    <output nil="true"></output>
    <pdiss>96mW</pdiss>
    <power>3.3V</power>
    <product-number>HXR3404</product-number>
    <s11 nil="true"></s11>
    <s22 nil="true"></s22>
    <segment>Datacom</segment>
    <speed>10G</speed>
    <status>Production</status>
    <temp-range>0-95C</temp-range>
    <three-db-bw nil="true"></three-db-bw>
    <updated-at type="datetime">2008-10-22T11:00:47-07:00</updated-at>
    <vout>550mV</vout>
    <vpi-3khz nil="true"></vpi-3khz>
    <wavelength-range nil="true"></wavelength-range>
    <web-access>Datacom</web-access>
  </record>
  <record>
    <bias-circuit-power-consumption nil="true"></bias-circuit-power-consumption>
    <channels type="integer">12</channels>
    <created-at type="datetime">2008-09-29T13:00:37-07:00</created-at>
    <datasheet-path></datasheet-path>
    <dc-extinction-ratio nil="true"></dc-extinction-ratio>
    <delay nil="true"></delay>
    <description>&lt;p&gt;The HXR3412C is a member of the family of GigOptix&amp;#8217;s Optical Receiver Transmitter Array (&lt;span class="caps"&gt;ORTA&lt;/span&gt;) product line targeted at the parallel optical links transceiver market. Together with a photodetector array, a micro-controller, flex assembly and optical connectors, high capacity, high availability optical links can be designed for telecom and datacom applications.&lt;/p&gt;</description>
    <form>Die</form>
    <function>Limiting</function>
    <gain>37kOhm</gain>
    <hidden type="boolean">false</hidden>
    <id type="integer">16</id>
    <image-path></image-path>
    <input>15uApp</input>
    <input-coupling nil="true"></input-coupling>
    <insertion-loss nil="true"></insertion-loss>
    <lavg nil="true"></lavg>
    <lbias nil="true"></lbias>
    <name>12-Channel 4.25Gb/s Reciever Array</name>
    <new-part nil="true"></new-part>
    <notes></notes>
    <output nil="true"></output>
    <pdiss>96mW</pdiss>
    <power>3.3V</power>
    <product-number>HXR3412</product-number>
    <s11 nil="true"></s11>
    <s22 nil="true"></s22>
    <segment>Datacom</segment>
    <speed>40G</speed>
    <status>Production</status>
    <temp-range>0-95C</temp-range>
    <three-db-bw nil="true"></three-db-bw>
    <updated-at type="datetime">2008-10-22T11:01:09-07:00</updated-at>
    <vout>550mV</vout>
    <vpi-3khz nil="true"></vpi-3khz>
    <wavelength-range nil="true"></wavelength-range>
    <web-access>Datacom</web-access>
  </record>
  <record>
    <bias-circuit-power-consumption nil="true"></bias-circuit-power-consumption>
    <channels type="integer">4</channels>
    <created-at type="datetime">2008-09-29T13:00:37-07:00</created-at>
    <datasheet-path></datasheet-path>
    <dc-extinction-ratio nil="true"></dc-extinction-ratio>
    <delay nil="true"></delay>
    <description>&lt;p&gt;The HXR4104B Transimpedance Limiting Amplifier array is a member of the family of Optical Receiver Transmitter Array (&lt;span class="caps"&gt;ORTA&lt;/span&gt;) products targeted at the parallel optical links market.&lt;/p&gt;</description>
    <form>Die</form>
    <function>Limiting</function>
    <gain>16kOhm</gain>
    <hidden type="boolean">false</hidden>
    <id type="integer">17</id>
    <image-path></image-path>
    <input>20uApp</input>
    <input-coupling nil="true"></input-coupling>
    <insertion-loss nil="true"></insertion-loss>
    <lavg nil="true"></lavg>
    <lbias nil="true"></lbias>
    <name>4-Channel 10.3Gb/s Reciever</name>
    <new-part nil="true"></new-part>
    <notes></notes>
    <output nil="true"></output>
    <pdiss>56mW/ch</pdiss>
    <power>3.3V</power>
    <product-number>HXR4104</product-number>
    <s11 nil="true"></s11>
    <s22 nil="true"></s22>
    <segment>Datacom</segment>
    <speed>40G</speed>
    <status>Production</status>
    <temp-range>0-95C</temp-range>
    <three-db-bw nil="true"></three-db-bw>
    <updated-at type="datetime">2009-06-04T09:08:44-07:00</updated-at>
    <vout>320 - 1200mV</vout>
    <vpi-3khz nil="true"></vpi-3khz>
    <wavelength-range nil="true"></wavelength-range>
    <web-access>Datacom</web-access>
  </record>
  <record>
    <bias-circuit-power-consumption nil="true"></bias-circuit-power-consumption>
    <channels type="integer">12</channels>
    <created-at type="datetime">2008-09-29T13:00:37-07:00</created-at>
    <datasheet-path></datasheet-path>
    <dc-extinction-ratio nil="true"></dc-extinction-ratio>
    <delay nil="true"></delay>
    <description>&lt;p&gt;The HXR4112 Transimpedance Limiting Amplifier array is a member of the family of Optical Receiver Transmitter Array (&lt;span class="caps"&gt;ORTA&lt;/span&gt;) products targeted at the parallel optical links market. Together with a &lt;span class="caps"&gt;PIN&lt;/span&gt; detector array or discrete detectors, high capacity, high availability optical links can be designed for telecom and datacom applications.&lt;/p&gt;</description>
    <form>Die</form>
    <function>Limiting</function>
    <gain></gain>
    <hidden type="boolean">false</hidden>
    <id type="integer">18</id>
    <image-path></image-path>
    <input></input>
    <input-coupling nil="true"></input-coupling>
    <insertion-loss nil="true"></insertion-loss>
    <lavg nil="true"></lavg>
    <lbias nil="true"></lbias>
    <name>12-Channel 10.3Gb/s Reciever</name>
    <new-part nil="true"></new-part>
    <notes></notes>
    <output nil="true"></output>
    <pdiss>56mW/ch</pdiss>
    <power>3.3V</power>
    <product-number>HXR4112</product-number>
    <s11 nil="true"></s11>
    <s22 nil="true"></s22>
    <segment>Datacom</segment>
    <speed>100G</speed>
    <status>Production</status>
    <temp-range>0-95C</temp-range>
    <three-db-bw nil="true"></three-db-bw>
    <updated-at type="datetime">2009-06-04T09:09:31-07:00</updated-at>
    <vout>320 - 1200mV</vout>
    <vpi-3khz nil="true"></vpi-3khz>
    <wavelength-range nil="true"></wavelength-range>
    <web-access>Datacom</web-access>
  </record>
  <record>
    <bias-circuit-power-consumption nil="true"></bias-circuit-power-consumption>
    <channels type="integer">4</channels>
    <created-at type="datetime">2008-09-29T13:00:37-07:00</created-at>
    <datasheet-path></datasheet-path>
    <dc-extinction-ratio nil="true"></dc-extinction-ratio>
    <delay nil="true"></delay>
    <description>&lt;p&gt;The HXT3104A is a key component for multi-channel multi-gigabit-per-second &lt;span class="caps"&gt;VCSEL&lt;/span&gt;-based transmitter modules.&lt;/p&gt;</description>
    <form>Die</form>
    <function>VCSEL</function>
    <gain nil="true"></gain>
    <hidden type="boolean">false</hidden>
    <id type="integer">30</id>
    <image-path></image-path>
    <input nil="true"></input>
    <input-coupling nil="true"></input-coupling>
    <insertion-loss nil="true"></insertion-loss>
    <lavg>10mA</lavg>
    <lbias>8mA</lbias>
    <name>4-Channel 10Gb/s TIA</name>
    <new-part nil="true"></new-part>
    <notes></notes>
    <output nil="true"></output>
    <pdiss>122mW</pdiss>
    <power>3.3V</power>
    <product-number>HXT3104</product-number>
    <s11 nil="true"></s11>
    <s22 nil="true"></s22>
    <segment>Datacom</segment>
    <speed>40G</speed>
    <status>Production</status>
    <temp-range>0-95C</temp-range>
    <three-db-bw nil="true"></three-db-bw>
    <updated-at type="datetime">2008-10-09T13:50:04-07:00</updated-at>
    <vout nil="true"></vout>
    <vpi-3khz nil="true"></vpi-3khz>
    <wavelength-range nil="true"></wavelength-range>
    <web-access>Datacom</web-access>
  </record>
  <record>
    <bias-circuit-power-consumption nil="true"></bias-circuit-power-consumption>
    <channels type="integer">4</channels>
    <created-at type="datetime">2008-09-29T13:00:37-07:00</created-at>
    <datasheet-path></datasheet-path>
    <dc-extinction-ratio nil="true"></dc-extinction-ratio>
    <delay nil="true"></delay>
    <description>&lt;p&gt;The HXT3404A is a member of the family of GigOptix&amp;#8217;s Optical Receiver Transmitter Array (ORTA&#65533;) product line targeted at the parallel optical links transceiver market. In a typical application with a &lt;span class="caps"&gt;VCSEL&lt;/span&gt; array, a micro-controller, flex assembly and optical connectors, high capacity, high availability optical links can be designed for telecom and datacom applications.&lt;/p&gt;</description>
    <form>Die</form>
    <function>VCSEL</function>
    <gain nil="true"></gain>
    <hidden type="boolean">false</hidden>
    <id type="integer">31</id>
    <image-path></image-path>
    <input nil="true"></input>
    <input-coupling nil="true"></input-coupling>
    <insertion-loss nil="true"></insertion-loss>
    <lavg>8mA</lavg>
    <lbias>8mA</lbias>
    <name>4-Channel 5Gb/s VCSEL Driver</name>
    <new-part nil="true"></new-part>
    <notes></notes>
    <output nil="true"></output>
    <pdiss>130mW</pdiss>
    <power>3.3V</power>
    <product-number>HXT3404</product-number>
    <s11 nil="true"></s11>
    <s22 nil="true"></s22>
    <segment>Datacom</segment>
    <speed>10G</speed>
    <status>Production</status>
    <temp-range>0-95C</temp-range>
    <three-db-bw nil="true"></three-db-bw>
    <updated-at type="datetime">2008-10-09T10:34:26-07:00</updated-at>
    <vout nil="true"></vout>
    <vpi-3khz nil="true"></vpi-3khz>
    <wavelength-range nil="true"></wavelength-range>
    <web-access>Datacom</web-access>
  </record>
  <record>
    <bias-circuit-power-consumption nil="true"></bias-circuit-power-consumption>
    <channels type="integer">12</channels>
    <created-at type="datetime">2008-09-29T13:00:37-07:00</created-at>
    <datasheet-path></datasheet-path>
    <dc-extinction-ratio nil="true"></dc-extinction-ratio>
    <delay nil="true"></delay>
    <description>&lt;p&gt;The HXT3412C is a member of the family of GigOptix&amp;#8217;s Optical Receiver Transmitter Array (ORTA&#65533;) product line targeted at the parallel optical links transceiver market. Together with a &lt;span class="caps"&gt;VCSEL&lt;/span&gt; array, a micro-controller, flex assembly and optical connectors, high capacity, high availability optical links can be designed for telecom and datacom applications.&lt;/p&gt;</description>
    <form>Die</form>
    <function>VCSEL</function>
    <gain nil="true"></gain>
    <hidden type="boolean">false</hidden>
    <id type="integer">32</id>
    <image-path></image-path>
    <input nil="true"></input>
    <input-coupling nil="true"></input-coupling>
    <insertion-loss nil="true"></insertion-loss>
    <lavg>8mA</lavg>
    <lbias>8mA</lbias>
    <name>12-Channel 5Gb/s VCSEL Driver</name>
    <new-part nil="true"></new-part>
    <notes></notes>
    <output nil="true"></output>
    <pdiss>130mW</pdiss>
    <power>3.3V</power>
    <product-number>HXT3412</product-number>
    <s11 nil="true"></s11>
    <s22 nil="true"></s22>
    <segment>Datacom</segment>
    <speed>40G</speed>
    <status>Production</status>
    <temp-range>0-95C</temp-range>
    <three-db-bw nil="true"></three-db-bw>
    <updated-at type="datetime">2008-10-09T09:59:05-07:00</updated-at>
    <vout nil="true"></vout>
    <vpi-3khz nil="true"></vpi-3khz>
    <wavelength-range nil="true"></wavelength-range>
    <web-access>Datacom</web-access>
  </record>
  <record>
    <bias-circuit-power-consumption nil="true"></bias-circuit-power-consumption>
    <channels type="integer">4</channels>
    <created-at type="datetime">2008-09-29T13:00:37-07:00</created-at>
    <datasheet-path></datasheet-path>
    <dc-extinction-ratio nil="true"></dc-extinction-ratio>
    <delay nil="true"></delay>
    <description>&lt;p&gt;The HXT4004 &lt;span class="caps"&gt;VCSEL&lt;/span&gt; driver array is a key component for compact, robust and low-power optical transmitter modules. In conjunction with the &lt;span class="caps"&gt;VCSEL&lt;/span&gt; array, the chip handles the complete digital-to-optical conversion, including &lt;span class="caps"&gt;CML&lt;/span&gt; input, laser driver, drive control and supervision.&lt;/p&gt;</description>
    <form>Die</form>
    <function>VCSEL</function>
    <gain nil="true"></gain>
    <hidden type="boolean">false</hidden>
    <id type="integer">33</id>
    <image-path></image-path>
    <input nil="true"></input>
    <input-coupling nil="true"></input-coupling>
    <insertion-loss nil="true"></insertion-loss>
    <lavg>10mA</lavg>
    <lbias>10mA</lbias>
    <name>4-Channel 10Gb/s VCSEL Driver</name>
    <new-part nil="true"></new-part>
    <notes></notes>
    <output nil="true"></output>
    <pdiss>66mW/ch</pdiss>
    <power>3.3V</power>
    <product-number>HXT4004</product-number>
    <s11 nil="true"></s11>
    <s22 nil="true"></s22>
    <segment>Datacom</segment>
    <speed>40G</speed>
    <status>Production</status>
    <temp-range>0-95C</temp-range>
    <three-db-bw nil="true"></three-db-bw>
    <updated-at type="datetime">2009-06-04T09:13:11-07:00</updated-at>
    <vout nil="true"></vout>
    <vpi-3khz nil="true"></vpi-3khz>
    <wavelength-range nil="true"></wavelength-range>
    <web-access>Datacom</web-access>
  </record>
  <record>
    <bias-circuit-power-consumption nil="true"></bias-circuit-power-consumption>
    <channels type="integer">12</channels>
    <created-at type="datetime">2008-09-29T13:00:37-07:00</created-at>
    <datasheet-path></datasheet-path>
    <dc-extinction-ratio nil="true"></dc-extinction-ratio>
    <delay nil="true"></delay>
    <description>&lt;p&gt;The HXT4012 &lt;span class="caps"&gt;VCSEL&lt;/span&gt; driver array is a key component for compact, robust and low-power optical transmitter modules. In conjunction with the &lt;span class="caps"&gt;VCSEL&lt;/span&gt; array, the chip handles the complete digital-to-optical conversion, including &lt;span class="caps"&gt;CML&lt;/span&gt; input, laser driver, drive control and supervision.&lt;/p&gt;</description>
    <form>Die</form>
    <function>VCSEL</function>
    <gain nil="true"></gain>
    <hidden type="boolean">false</hidden>
    <id type="integer">34</id>
    <image-path></image-path>
    <input nil="true"></input>
    <input-coupling nil="true"></input-coupling>
    <insertion-loss nil="true"></insertion-loss>
    <lavg>10mA</lavg>
    <lbias>10mA</lbias>
    <name>12-Channel 10Gb/s VCSEL Driver</name>
    <new-part nil="true"></new-part>
    <notes></notes>
    <output nil="true"></output>
    <pdiss>66mW/ch</pdiss>
    <power>3.3V</power>
    <product-number>HXT4012</product-number>
    <s11 nil="true"></s11>
    <s22 nil="true"></s22>
    <segment>Datacom</segment>
    <speed>100G</speed>
    <status>Production</status>
    <temp-range>0-95C</temp-range>
    <three-db-bw nil="true"></three-db-bw>
    <updated-at type="datetime">2009-06-04T09:13:01-07:00</updated-at>
    <vout nil="true"></vout>
    <vpi-3khz nil="true"></vpi-3khz>
    <wavelength-range nil="true"></wavelength-range>
    <web-access>Datacom</web-access>
  </record>
  <record>
    <bias-circuit-power-consumption nil="true"></bias-circuit-power-consumption>
    <channels type="integer">4</channels>
    <created-at type="datetime">2008-09-29T13:00:37-07:00</created-at>
    <datasheet-path></datasheet-path>
    <dc-extinction-ratio nil="true"></dc-extinction-ratio>
    <delay nil="true"></delay>
    <description>&lt;p&gt;The HXT4104B &lt;span class="caps"&gt;VCSEL&lt;/span&gt; driver array is a key component for compact, robust and low-power optical transmitter modules. In conjunction with the &lt;span class="caps"&gt;VCSEL&lt;/span&gt; array, the chip handles the complete digital-to-optical conversion, including &lt;span class="caps"&gt;CML&lt;/span&gt; input, laser driver, drive control and supervision.&lt;/p&gt;</description>
    <form>Die</form>
    <function>VCSEL</function>
    <gain nil="true"></gain>
    <hidden type="boolean">false</hidden>
    <id type="integer">35</id>
    <image-path></image-path>
    <input nil="true"></input>
    <input-coupling nil="true"></input-coupling>
    <insertion-loss nil="true"></insertion-loss>
    <lavg>10mA</lavg>
    <lbias>10mA</lbias>
    <name>4-Channel 10.3Gb/s VCSEL Driver</name>
    <new-part nil="true"></new-part>
    <notes></notes>
    <output nil="true"></output>
    <pdiss>63mW/ch</pdiss>
    <power>3.3V</power>
    <product-number>HXT4104</product-number>
    <s11 nil="true"></s11>
    <s22 nil="true"></s22>
    <segment>Datacom</segment>
    <speed>40G</speed>
    <status>Production</status>
    <temp-range>0-95C</temp-range>
    <three-db-bw nil="true"></three-db-bw>
    <updated-at type="datetime">2009-06-04T09:12:49-07:00</updated-at>
    <vout nil="true"></vout>
    <vpi-3khz nil="true"></vpi-3khz>
    <wavelength-range nil="true"></wavelength-range>
    <web-access>Datacom</web-access>
  </record>
  <record>
    <bias-circuit-power-consumption nil="true"></bias-circuit-power-consumption>
    <channels type="integer">12</channels>
    <created-at type="datetime">2008-09-29T13:00:37-07:00</created-at>
    <datasheet-path></datasheet-path>
    <dc-extinction-ratio nil="true"></dc-extinction-ratio>
    <delay nil="true"></delay>
    <description>&lt;p&gt;The HXT4112A &lt;span class="caps"&gt;VCSEL&lt;/span&gt; driver array is a key component for compact, robust and low-power optical transmitter modules. In conjunction with the &lt;span class="caps"&gt;VCSEL&lt;/span&gt; array, the chip handles the complete digital-to-optical conversion, including &lt;span class="caps"&gt;CML&lt;/span&gt; input, laser driver, drive control and supervision.&lt;/p&gt;</description>
    <form>Die</form>
    <function>VCSEL</function>
    <gain nil="true"></gain>
    <hidden type="boolean">false</hidden>
    <id type="integer">36</id>
    <image-path></image-path>
    <input nil="true"></input>
    <input-coupling nil="true"></input-coupling>
    <insertion-loss nil="true"></insertion-loss>
    <lavg>10mA</lavg>
    <lbias>10mA</lbias>
    <name>12-Channel 10Gb/s VCSEL Driver</name>
    <new-part nil="true"></new-part>
    <notes></notes>
    <output nil="true"></output>
    <pdiss>63mW</pdiss>
    <power>3.3V</power>
    <product-number>HXT4112</product-number>
    <s11 nil="true"></s11>
    <s22 nil="true"></s22>
    <segment>Datacom</segment>
    <speed>100G</speed>
    <status>Production</status>
    <temp-range>0-95C</temp-range>
    <three-db-bw nil="true"></three-db-bw>
    <updated-at type="datetime">2009-06-04T09:12:33-07:00</updated-at>
    <vout nil="true"></vout>
    <vpi-3khz nil="true"></vpi-3khz>
    <wavelength-range nil="true"></wavelength-range>
    <web-access>Datacom</web-access>
  </record>
  <record>
    <bias-circuit-power-consumption nil="true"></bias-circuit-power-consumption>
    <channels type="integer">1</channels>
    <created-at type="datetime">2008-09-29T13:00:37-07:00</created-at>
    <datasheet-path></datasheet-path>
    <dc-extinction-ratio nil="true"></dc-extinction-ratio>
    <delay nil="true"></delay>
    <description>&lt;p&gt;The iT2005 is a broadband GaAs &lt;span class="caps"&gt;MMIC&lt;/span&gt; traveling wave amplifier designed for medium output power applications where low-frequency extension capabilities are also required.&lt;/p&gt;</description>
    <form>Die</form>
    <function>BB RF</function>
    <gain>16dB</gain>
    <hidden type="boolean">false</hidden>
    <id type="integer">19</id>
    <image-path></image-path>
    <input nil="true"></input>
    <input-coupling nil="true"></input-coupling>
    <insertion-loss nil="true"></insertion-loss>
    <lavg nil="true"></lavg>
    <lbias nil="true"></lbias>
    <name>30kHz - 26.5GHz Power Amplifier</name>
    <new-part nil="true"></new-part>
    <notes></notes>
    <output nil="true"></output>
    <pdiss>1.76W</pdiss>
    <power>8V</power>
    <product-number>iT2005</product-number>
    <s11>-12dB</s11>
    <s22>-12dB</s22>
    <segment>Various</segment>
    <speed>N/A</speed>
    <status>Production</status>
    <temp-range>0 to 85C</temp-range>
    <three-db-bw>26.5GHz</three-db-bw>
    <updated-at type="datetime">2009-07-01T09:58:44-07:00</updated-at>
    <vout nil="true"></vout>
    <vpi-3khz nil="true"></vpi-3khz>
    <wavelength-range nil="true"></wavelength-range>
    <web-access>Various</web-access>
  </record>
  <record>
    <bias-circuit-power-consumption nil="true"></bias-circuit-power-consumption>
    <channels type="integer">1</channels>
    <created-at type="datetime">2008-09-29T13:00:37-07:00</created-at>
    <datasheet-path></datasheet-path>
    <dc-extinction-ratio nil="true"></dc-extinction-ratio>
    <delay nil="true"></delay>
    <description>&lt;p&gt;The iT2005F is a RoHS-6-compliant packaged broadband amplifier designed for medium output power applications where low-frequency capabilities are also required.&lt;/p&gt;</description>
    <form>QFN</form>
    <function>BB RF</function>
    <gain>15dB</gain>
    <hidden type="boolean">false</hidden>
    <id type="integer">20</id>
    <image-path></image-path>
    <input nil="true"></input>
    <input-coupling nil="true"></input-coupling>
    <insertion-loss nil="true"></insertion-loss>
    <lavg nil="true"></lavg>
    <lbias nil="true"></lbias>
    <name>30kHz - 18GHz Power Amplifier</name>
    <new-part nil="true"></new-part>
    <notes></notes>
    <output nil="true"></output>
    <pdiss>1.76W</pdiss>
    <power>5V</power>
    <product-number>iT2005F</product-number>
    <s11>-12dB</s11>
    <s22>-12dB</s22>
    <segment>Various</segment>
    <speed>N/A</speed>
    <status>Production</status>
    <temp-range>0-85C</temp-range>
    <three-db-bw>18GHz</three-db-bw>
    <updated-at type="datetime">2008-10-27T13:27:11-07:00</updated-at>
    <vout nil="true"></vout>
    <vpi-3khz nil="true"></vpi-3khz>
    <wavelength-range nil="true"></wavelength-range>
    <web-access>Various</web-access>
  </record>
  <record>
    <bias-circuit-power-consumption nil="true"></bias-circuit-power-consumption>
    <channels type="integer">1</channels>
    <created-at type="datetime">2008-09-29T13:00:37-07:00</created-at>
    <datasheet-path></datasheet-path>
    <dc-extinction-ratio nil="true"></dc-extinction-ratio>
    <delay nil="true"></delay>
    <description>&lt;p&gt;The iT2008 is a broadband GaAs &lt;span class="caps"&gt;MMIC&lt;/span&gt; traveling wave amplifier designed for high output power applications where low-frequency extension capabilities are also required.&lt;/p&gt;</description>
    <form>Die</form>
    <function>BB RF</function>
    <gain>10dB</gain>
    <hidden type="boolean">false</hidden>
    <id type="integer">21</id>
    <image-path></image-path>
    <input nil="true"></input>
    <input-coupling nil="true"></input-coupling>
    <insertion-loss nil="true"></insertion-loss>
    <lavg nil="true"></lavg>
    <lbias nil="true"></lbias>
    <name>10MHz - 26.5GHz High Power Amplifier</name>
    <new-part nil="true"></new-part>
    <notes></notes>
    <output nil="true"></output>
    <pdiss>3.1W</pdiss>
    <power>9V</power>
    <product-number>iT2008</product-number>
    <s11>-12dB</s11>
    <s22>-12dB</s22>
    <segment>Various</segment>
    <speed>N/A</speed>
    <status>Production</status>
    <temp-range>0 to 85C</temp-range>
    <three-db-bw>26.5GHz</three-db-bw>
    <updated-at type="datetime">2009-07-01T09:58:56-07:00</updated-at>
    <vout nil="true"></vout>
    <vpi-3khz nil="true"></vpi-3khz>
    <wavelength-range nil="true"></wavelength-range>
    <web-access>Various</web-access>
  </record>
  <record>
    <bias-circuit-power-consumption nil="true"></bias-circuit-power-consumption>
    <channels type="integer">1</channels>
    <created-at type="datetime">2008-09-29T13:00:37-07:00</created-at>
    <datasheet-path></datasheet-path>
    <dc-extinction-ratio nil="true"></dc-extinction-ratio>
    <delay nil="true"></delay>
    <description>&lt;p&gt;The iT2009 is a broadband GaAs &lt;span class="caps"&gt;MMIC&lt;/span&gt; traveling wave amplifier designed for high output power applications where high gain performance is also required.&lt;/p&gt;</description>
    <form>Die</form>
    <function>BB RF</function>
    <gain>20db</gain>
    <hidden type="boolean">false</hidden>
    <id type="integer">22</id>
    <image-path></image-path>
    <input nil="true"></input>
    <input-coupling nil="true"></input-coupling>
    <insertion-loss nil="true"></insertion-loss>
    <lavg nil="true"></lavg>
    <lbias nil="true"></lbias>
    <name>2GHz - 26.5GHz High Power Amplifier</name>
    <new-part nil="true"></new-part>
    <notes></notes>
    <output nil="true"></output>
    <pdiss>5.4W</pdiss>
    <power>9V</power>
    <product-number>iT2009</product-number>
    <s11>-12dB</s11>
    <s22>-12dB</s22>
    <segment>Various</segment>
    <speed>N/A</speed>
    <status>Production</status>
    <temp-range>0 to 85C</temp-range>
    <three-db-bw>26.5GHz</three-db-bw>
    <updated-at type="datetime">2009-07-01T09:59:10-07:00</updated-at>
    <vout nil="true"></vout>
    <vpi-3khz nil="true"></vpi-3khz>
    <wavelength-range nil="true"></wavelength-range>
    <web-access>Various</web-access>
  </record>
  <record>
    <bias-circuit-power-consumption nil="true"></bias-circuit-power-consumption>
    <channels type="integer">1</channels>
    <created-at type="datetime">2009-04-29T07:06:17-07:00</created-at>
    <datasheet-path></datasheet-path>
    <dc-extinction-ratio nil="true"></dc-extinction-ratio>
    <delay nil="true"></delay>
    <description>&lt;p&gt;The iT2018 is a three-stage, high-power amplifier that operates from 5 to 18 GHz.&lt;/p&gt;</description>
    <form>Die</form>
    <function>BB RF</function>
    <gain>21dB</gain>
    <hidden type="boolean">false</hidden>
    <id type="integer">58</id>
    <image-path></image-path>
    <input nil="true"></input>
    <input-coupling nil="true"></input-coupling>
    <insertion-loss nil="true"></insertion-loss>
    <lavg nil="true"></lavg>
    <lbias nil="true"></lbias>
    <name>5GHz &#8211; 18GHz, 2W Amplifier</name>
    <new-part nil="true"></new-part>
    <notes></notes>
    <output nil="true"></output>
    <pdiss>8.8W</pdiss>
    <power>8V</power>
    <product-number>iT2018</product-number>
    <s11>10dB</s11>
    <s22>7.5dB</s22>
    <segment>Various</segment>
    <speed>N/A</speed>
    <status>Production</status>
    <temp-range>-40 to 85C</temp-range>
    <three-db-bw>18GHz</three-db-bw>
    <updated-at type="datetime">2009-04-29T14:22:26-07:00</updated-at>
    <vout nil="true"></vout>
    <vpi-3khz nil="true"></vpi-3khz>
    <wavelength-range nil="true"></wavelength-range>
    <web-access>Various</web-access>
  </record>
  <record>
    <bias-circuit-power-consumption nil="true"></bias-circuit-power-consumption>
    <channels type="integer">1</channels>
    <created-at type="datetime">2008-09-29T13:00:37-07:00</created-at>
    <datasheet-path></datasheet-path>
    <dc-extinction-ratio nil="true"></dc-extinction-ratio>
    <delay nil="true"></delay>
    <description>&lt;p&gt;The iT3010E is a RoHS-6-compliant packaged differential amplifier designed for use in 10.7 Gb/s and 12.5 Gb/s (OC-192) optical transmitters and receivers as a gain stage with limiting functionality.&lt;/p&gt;</description>
    <form>QFN</form>
    <function>BB RF Differential</function>
    <gain>23.5db</gain>
    <hidden type="boolean">false</hidden>
    <id type="integer">23</id>
    <image-path></image-path>
    <input nil="true"></input>
    <input-coupling nil="true"></input-coupling>
    <insertion-loss nil="true"></insertion-loss>
    <lavg nil="true"></lavg>
    <lbias nil="true"></lbias>
    <name>10GHz Medium Gain Amplifier</name>
    <new-part nil="true"></new-part>
    <notes></notes>
    <output nil="true"></output>
    <pdiss>855mW</pdiss>
    <power>-5V, 5V</power>
    <product-number>iT3010E</product-number>
    <s11>-20dB</s11>
    <s22>-10dB</s22>
    <segment>Various</segment>
    <speed>10G</speed>
    <status>Production</status>
    <temp-range>0-85C</temp-range>
    <three-db-bw>10GHz</three-db-bw>
    <updated-at type="datetime">2008-10-09T09:50:34-07:00</updated-at>
    <vout nil="true"></vout>
    <vpi-3khz nil="true"></vpi-3khz>
    <wavelength-range nil="true"></wavelength-range>
    <web-access>Various</web-access>
  </record>
  <record>
    <bias-circuit-power-consumption nil="true"></bias-circuit-power-consumption>
    <channels type="integer">1</channels>
    <created-at type="datetime">2008-09-29T13:00:37-07:00</created-at>
    <datasheet-path></datasheet-path>
    <dc-extinction-ratio nil="true"></dc-extinction-ratio>
    <delay nil="true"></delay>
    <description>&lt;p&gt;The iT3011E is a RoHS-6-compliant limiting amplifier for use as a post amplifier in OC-192 and &lt;span class="caps"&gt;STM&lt;/span&gt;-64 optical receivers.&lt;/p&gt;</description>
    <form>Die</form>
    <function>BB RF Differential</function>
    <gain>42dB</gain>
    <hidden type="boolean">false</hidden>
    <id type="integer">24</id>
    <image-path></image-path>
    <input nil="true"></input>
    <input-coupling nil="true"></input-coupling>
    <insertion-loss nil="true"></insertion-loss>
    <lavg nil="true"></lavg>
    <lbias nil="true"></lbias>
    <name>12.5Gb/s High Sensitivity Limiter Amplifier</name>
    <new-part nil="true"></new-part>
    <notes></notes>
    <output nil="true"></output>
    <pdiss>572mW</pdiss>
    <power>-5V, 5V</power>
    <product-number>iT3011D</product-number>
    <s11>-20dB</s11>
    <s22>-15db</s22>
    <segment>Various</segment>
    <speed>10G</speed>
    <status>Production</status>
    <temp-range>0-85C</temp-range>
    <three-db-bw>10GHz</three-db-bw>
    <updated-at type="datetime">2008-10-09T09:48:59-07:00</updated-at>
    <vout nil="true"></vout>
    <vpi-3khz nil="true"></vpi-3khz>
    <wavelength-range nil="true"></wavelength-range>
    <web-access>Various</web-access>
  </record>
  <record>
    <bias-circuit-power-consumption nil="true"></bias-circuit-power-consumption>
    <channels type="integer">1</channels>
    <created-at type="datetime">2008-09-29T13:00:37-07:00</created-at>
    <datasheet-path></datasheet-path>
    <dc-extinction-ratio nil="true"></dc-extinction-ratio>
    <delay nil="true"></delay>
    <description>&lt;p&gt;The iT3011E is a limiting amplifier for use as a post amplifier in OC-192 and &lt;span class="caps"&gt;STM&lt;/span&gt;-64 optical receivers.&lt;/p&gt;</description>
    <form>QFN</form>
    <function>BB RF Differential</function>
    <gain>42dB</gain>
    <hidden type="boolean">false</hidden>
    <id type="integer">25</id>
    <image-path>http://s48731.gridserver.com/images/products/iT3011EEVB-AC.jpg</image-path>
    <input nil="true"></input>
    <input-coupling nil="true"></input-coupling>
    <insertion-loss nil="true"></insertion-loss>
    <lavg nil="true"></lavg>
    <lbias nil="true"></lbias>
    <name>12.5Gb/s High Sensitivity Limiter Amplifier</name>
    <new-part nil="true"></new-part>
    <notes></notes>
    <output nil="true"></output>
    <pdiss>572mW</pdiss>
    <power>-5V</power>
    <product-number>iT3011E</product-number>
    <s11>-20dB</s11>
    <s22>-15db</s22>
    <segment>Various</segment>
    <speed>10G</speed>
    <status>Production</status>
    <temp-range>0-85C</temp-range>
    <three-db-bw>10GHz</three-db-bw>
    <updated-at type="datetime">2009-12-21T16:34:29-08:00</updated-at>
    <vout nil="true"></vout>
    <vpi-3khz nil="true"></vpi-3khz>
    <wavelength-range nil="true"></wavelength-range>
    <web-access>Various</web-access>
  </record>
  <record>
    <bias-circuit-power-consumption nil="true"></bias-circuit-power-consumption>
    <channels type="integer">1</channels>
    <created-at type="datetime">2008-09-29T13:00:37-07:00</created-at>
    <datasheet-path></datasheet-path>
    <dc-extinction-ratio nil="true"></dc-extinction-ratio>
    <delay nil="true"></delay>
    <description>&lt;p&gt;The iT3012E is a RoHS-6-compliant packaged differential-to-single-ended amplifier designed for use as an optical modulator predriver with limiting functionality in 10.7 Gb/s and 12.5 Gb/s (OC-192) optical transmitters and receivers.&lt;/p&gt;</description>
    <form>QFN</form>
    <function>BB RF Differential</function>
    <gain>17.5dB</gain>
    <hidden type="boolean">false</hidden>
    <id type="integer">26</id>
    <image-path></image-path>
    <input nil="true"></input>
    <input-coupling nil="true"></input-coupling>
    <insertion-loss nil="true"></insertion-loss>
    <lavg nil="true"></lavg>
    <lbias nil="true"></lbias>
    <name>8Ghz Differential-to-Single-Ended Amplifier</name>
    <new-part nil="true"></new-part>
    <notes></notes>
    <output nil="true"></output>
    <pdiss>665mW</pdiss>
    <power>-5V, 5V</power>
    <product-number>iT3012E</product-number>
    <s11>-20dB</s11>
    <s22>-10dB</s22>
    <segment>Various</segment>
    <speed>10G</speed>
    <status>Production</status>
    <temp-range>0-85C</temp-range>
    <three-db-bw>10GHz</three-db-bw>
    <updated-at type="datetime">2008-10-22T10:54:27-07:00</updated-at>
    <vout nil="true"></vout>
    <vpi-3khz nil="true"></vpi-3khz>
    <wavelength-range nil="true"></wavelength-range>
    <web-access>Various</web-access>
  </record>
  <record>
    <bias-circuit-power-consumption nil="true"></bias-circuit-power-consumption>
    <channels type="integer">1</channels>
    <created-at type="datetime">2008-09-29T13:00:37-07:00</created-at>
    <datasheet-path></datasheet-path>
    <dc-extinction-ratio nil="true"></dc-extinction-ratio>
    <delay nil="true"></delay>
    <description>&lt;p&gt;The iT3018E is a RoHS-6-compliant limiting amplifier for use as a post amplifier in OC-192 and &lt;span class="caps"&gt;STM&lt;/span&gt;-64 optical receivers.&lt;/p&gt;</description>
    <form>QFN</form>
    <function>BB RF Differential</function>
    <gain>50dB</gain>
    <hidden type="boolean">false</hidden>
    <id type="integer">27</id>
    <image-path></image-path>
    <input nil="true"></input>
    <input-coupling nil="true"></input-coupling>
    <insertion-loss nil="true"></insertion-loss>
    <lavg nil="true"></lavg>
    <lbias nil="true"></lbias>
    <name>12.5Gb/s High Gain Limiter Amplifier</name>
    <new-part nil="true"></new-part>
    <notes></notes>
    <output nil="true"></output>
    <pdiss>624mW</pdiss>
    <power>-5.2V</power>
    <product-number>iT3018E</product-number>
    <s11>-20dB</s11>
    <s22>-15db</s22>
    <segment>Various</segment>
    <speed>10G</speed>
    <status>Production</status>
    <temp-range>0-85C</temp-range>
    <three-db-bw>10GHz</three-db-bw>
    <updated-at type="datetime">2008-10-09T09:46:20-07:00</updated-at>
    <vout nil="true"></vout>
    <vpi-3khz nil="true"></vpi-3khz>
    <wavelength-range nil="true"></wavelength-range>
    <web-access>Various</web-access>
  </record>
  <record>
    <bias-circuit-power-consumption nil="true"></bias-circuit-power-consumption>
    <channels type="integer">1</channels>
    <created-at type="datetime">2008-09-29T13:00:37-07:00</created-at>
    <datasheet-path></datasheet-path>
    <dc-extinction-ratio nil="true"></dc-extinction-ratio>
    <delay>120ps</delay>
    <description>&lt;p&gt;The iT4036F is an ultra-wideband phase delay designed with a high-speed &lt;span class="caps"&gt;ECL&lt;/span&gt; topology for either single-ended or differential data input/output.&lt;/p&gt;</description>
    <form>QFN</form>
    <function>BB Differential</function>
    <gain nil="true"></gain>
    <hidden type="boolean">false</hidden>
    <id type="integer">5</id>
    <image-path>http://s48731.gridserver.com/images/products/iT4036FEVB.jpg</image-path>
    <input nil="true"></input>
    <input-coupling nil="true"></input-coupling>
    <insertion-loss nil="true"></insertion-loss>
    <lavg nil="true"></lavg>
    <lbias nil="true"></lbias>
    <name>Wideband Phase Delay</name>
    <new-part nil="true"></new-part>
    <notes></notes>
    <output nil="true"></output>
    <pdiss>570mW</pdiss>
    <power>-3.3V</power>
    <product-number>iT4036F</product-number>
    <s11>-10dB</s11>
    <s22>-10dB</s22>
    <segment>Various</segment>
    <speed>10G</speed>
    <status>Production</status>
    <temp-range>0-85C</temp-range>
    <three-db-bw>11.7GHz</three-db-bw>
    <updated-at type="datetime">2008-10-09T13:45:23-07:00</updated-at>
    <vout nil="true"></vout>
    <vpi-3khz nil="true"></vpi-3khz>
    <wavelength-range nil="true"></wavelength-range>
    <web-access>Various</web-access>
  </record>
  <record>
    <bias-circuit-power-consumption nil="true"></bias-circuit-power-consumption>
    <channels type="integer">1</channels>
    <created-at type="datetime">2008-09-29T13:00:37-07:00</created-at>
    <datasheet-path></datasheet-path>
    <dc-extinction-ratio nil="true"></dc-extinction-ratio>
    <delay nil="true"></delay>
    <description>&lt;p&gt;The iT6134B generates an RZ format from an &lt;span class="caps"&gt;NRZ&lt;/span&gt; data stream and clock signal, and is optimized for 11.1-Gb/s long-haul applications employing LiNbO3 modulators.&lt;/p&gt;</description>
    <form>SMD</form>
    <function>MZ</function>
    <gain></gain>
    <hidden type="boolean">false</hidden>
    <id type="integer">48</id>
    <image-path></image-path>
    <input nil="true"></input>
    <input-coupling>AC</input-coupling>
    <insertion-loss nil="true"></insertion-loss>
    <lavg nil="true"></lavg>
    <lbias nil="true"></lbias>
    <name>NRZ-RZ Converter and MZ Driver</name>
    <new-part nil="true"></new-part>
    <notes></notes>
    <output>AC</output>
    <pdiss>2W</pdiss>
    <power>3.3V, 5V</power>
    <product-number>iT6134B</product-number>
    <s11 nil="true"></s11>
    <s22 nil="true"></s22>
    <segment>Telecom</segment>
    <speed>10G</speed>
    <status>Production</status>
    <temp-range>0-70C</temp-range>
    <three-db-bw nil="true"></three-db-bw>
    <updated-at type="datetime">2008-11-21T19:12:30-08:00</updated-at>
    <vout>5-6Vpp</vout>
    <vpi-3khz nil="true"></vpi-3khz>
    <wavelength-range nil="true"></wavelength-range>
    <web-access>Telecom</web-access>
  </record>
  <record>
    <bias-circuit-power-consumption nil="true"></bias-circuit-power-consumption>
    <channels type="integer">1</channels>
    <created-at type="datetime">2009-02-19T10:41:19-08:00</created-at>
    <datasheet-path></datasheet-path>
    <dc-extinction-ratio nil="true"></dc-extinction-ratio>
    <delay nil="true"></delay>
    <description>&lt;p&gt;The GX3101 is a high gain 10.3Gb/s limiting transimpedance amplifier designed for use in ROSA&amp;#8217;s.&lt;/p&gt;</description>
    <form>Die</form>
    <function>Limiting</function>
    <gain>Contact Sales</gain>
    <hidden type="boolean">false</hidden>
    <id type="integer">57</id>
    <image-path></image-path>
    <input>Contact Sales</input>
    <input-coupling nil="true"></input-coupling>
    <insertion-loss nil="true"></insertion-loss>
    <lavg nil="true"></lavg>
    <lbias nil="true"></lbias>
    <name>10.3Gb/s High Gain Limiting TIA</name>
    <new-part nil="true"></new-part>
    <notes></notes>
    <output nil="true"></output>
    <pdiss>Contact Sales</pdiss>
    <power>3.3V</power>
    <product-number>GX3101</product-number>
    <s11 nil="true"></s11>
    <s22 nil="true"></s22>
    <segment>Datacom</segment>
    <speed>10G</speed>
    <status>Sampling</status>
    <temp-range>Contact Sales</temp-range>
    <three-db-bw nil="true"></three-db-bw>
    <updated-at type="datetime">2009-07-22T11:45:47-07:00</updated-at>
    <vout>Contact Sales</vout>
    <vpi-3khz nil="true"></vpi-3khz>
    <wavelength-range nil="true"></wavelength-range>
    <web-access>Datacom</web-access>
  </record>
  <record>
    <bias-circuit-power-consumption nil="true"></bias-circuit-power-consumption>
    <channels type="integer">1</channels>
    <created-at type="datetime">2008-09-29T13:00:37-07:00</created-at>
    <datasheet-path></datasheet-path>
    <dc-extinction-ratio nil="true"></dc-extinction-ratio>
    <delay nil="true"></delay>
    <description>&lt;p&gt;The GX3100 is a high performance 11.3Gbps linear transimpedance amplifier with &lt;span class="caps"&gt;TIA&lt;/span&gt; designed for use in receiver modules for fiber optic communication systems such as &lt;span class="caps"&gt;SDH&lt;/span&gt; &lt;span class="caps"&gt;STM&lt;/span&gt;-64 and &lt;span class="caps"&gt;SONET&lt;/span&gt; OC-192.&lt;/p&gt;</description>
    <form>Die</form>
    <function>Linear/AGC</function>
    <gain>Contact Sales</gain>
    <hidden type="boolean">false</hidden>
    <id type="integer">6</id>
    <image-path>http://s48731.gridserver.com/images/products/NoPhoto.jpg</image-path>
    <input>Contact Sales</input>
    <input-coupling nil="true"></input-coupling>
    <insertion-loss nil="true"></insertion-loss>
    <lavg nil="true"></lavg>
    <lbias nil="true"></lbias>
    <name>11.3Gb/s TIA with AGC</name>
    <new-part nil="true"></new-part>
    <notes></notes>
    <output nil="true"></output>
    <pdiss>Contact Sales</pdiss>
    <power>3.3V</power>
    <product-number>GX3110</product-number>
    <s11 nil="true"></s11>
    <s22 nil="true"></s22>
    <segment>Telecom/Datacom</segment>
    <speed>10G</speed>
    <status>Sampling</status>
    <temp-range>Contact Sales</temp-range>
    <three-db-bw nil="true"></three-db-bw>
    <updated-at type="datetime">2009-07-22T11:46:12-07:00</updated-at>
    <vout>Contact Sales</vout>
    <vpi-3khz nil="true"></vpi-3khz>
    <wavelength-range nil="true"></wavelength-range>
    <web-access>Telecom/Datacom</web-access>
  </record>
  <record>
    <bias-circuit-power-consumption nil="true"></bias-circuit-power-consumption>
    <channels type="integer">1</channels>
    <created-at type="datetime">2010-03-03T13:32:33-08:00</created-at>
    <datasheet-path></datasheet-path>
    <dc-extinction-ratio nil="true"></dc-extinction-ratio>
    <delay nil="true"></delay>
    <description>&lt;p&gt;The GX3122 &lt;span class="caps"&gt;TIA&lt;/span&gt; consists of two linear 12.5Gb/s balanced TIAs in a single die. The device forms the gain interface between the photodiodes and the Analog to Digital Converters (&lt;span class="caps"&gt;ADC&lt;/span&gt;) and Digital Signal Processor (&lt;span class="caps"&gt;DSP&lt;/span&gt;) in a coherent optical receiver. The GX3122 is designed to have the required large dynamic range and handle the high AC and DC currents with a consistently low &lt;span class="caps"&gt;THD&lt;/span&gt;.&lt;/p&gt;</description>
    <form>Die</form>
    <function>Linear/AGC</function>
    <gain>contact sales</gain>
    <hidden type="boolean">false</hidden>
    <id type="integer">68</id>
    <image-path></image-path>
    <input>contact sales</input>
    <input-coupling nil="true"></input-coupling>
    <insertion-loss nil="true"></insertion-loss>
    <lavg nil="true"></lavg>
    <lbias nil="true"></lbias>
    <name>12.5Gb/s Dual Channel Linear Balanced TIA with AGC</name>
    <new-part nil="true"></new-part>
    <notes></notes>
    <output nil="true"></output>
    <pdiss>contact sales</pdiss>
    <power>3.3V</power>
    <product-number>GX3122</product-number>
    <s11 nil="true"></s11>
    <s22 nil="true"></s22>
    <segment></segment>
    <speed>2x10G</speed>
    <status>Sampling</status>
    <temp-range>contact sales</temp-range>
    <three-db-bw nil="true"></three-db-bw>
    <updated-at type="datetime">2010-03-03T13:36:03-08:00</updated-at>
    <vout>contact sales</vout>
    <vpi-3khz nil="true"></vpi-3khz>
    <wavelength-range nil="true"></wavelength-range>
    <web-access></web-access>
  </record>
  <record>
    <bias-circuit-power-consumption nil="true"></bias-circuit-power-consumption>
    <channels type="integer">1</channels>
    <created-at type="datetime">2008-09-29T13:00:37-07:00</created-at>
    <datasheet-path></datasheet-path>
    <dc-extinction-ratio nil="true"></dc-extinction-ratio>
    <delay nil="true"></delay>
    <description>&lt;p&gt;The GX3200 is a high performance 28Gbps limiting transimpedance amplifier IC designed for use in receiver modules for fiber optic communication systems such as 4&amp;#215;25Gbps 100G Ethernet systems.&lt;/p&gt;</description>
    <form>Die</form>
    <function>Limiting</function>
    <gain>Contact Sales</gain>
    <hidden type="boolean">false</hidden>
    <id type="integer">8</id>
    <image-path></image-path>
    <input>Contact Sales</input>
    <input-coupling nil="true"></input-coupling>
    <insertion-loss nil="true"></insertion-loss>
    <lavg nil="true"></lavg>
    <lbias nil="true"></lbias>
    <name>28Gb/s Limiting TIA</name>
    <new-part nil="true"></new-part>
    <notes></notes>
    <output nil="true"></output>
    <pdiss>Contact Sales</pdiss>
    <power>3.3V</power>
    <product-number>GX3200</product-number>
    <s11 nil="true"></s11>
    <s22 nil="true"></s22>
    <segment>Datacom</segment>
    <speed>28G</speed>
    <status>Sampling</status>
    <temp-range>Contact Sales</temp-range>
    <three-db-bw nil="true"></three-db-bw>
    <updated-at type="datetime">2009-07-22T11:46:28-07:00</updated-at>
    <vout>Contact Sales</vout>
    <vpi-3khz nil="true"></vpi-3khz>
    <wavelength-range nil="true"></wavelength-range>
    <web-access>Datacom</web-access>
  </record>
  <record>
    <bias-circuit-power-consumption nil="true"></bias-circuit-power-consumption>
    <channels type="integer">1</channels>
    <created-at type="datetime">2008-09-29T13:00:37-07:00</created-at>
    <datasheet-path></datasheet-path>
    <dc-extinction-ratio nil="true"></dc-extinction-ratio>
    <delay nil="true"></delay>
    <description>&lt;p&gt;The GX3220 is a high performance 28Gbps linear transimpedance amplifier IC with &lt;span class="caps"&gt;AGC&lt;/span&gt; designed for use in balanced receiver designs for fiber optic communication systems such as 4&amp;#215;28Gbps 100G DP-&lt;span class="caps"&gt;DQPSK&lt;/span&gt; and 40G &lt;span class="caps"&gt;DQPSK&lt;/span&gt; receivers.&lt;/p&gt;</description>
    <form>Die</form>
    <function>Linear</function>
    <gain>Contact Sales</gain>
    <hidden type="boolean">false</hidden>
    <id type="integer">9</id>
    <image-path></image-path>
    <input>Contact Sales</input>
    <input-coupling nil="true"></input-coupling>
    <insertion-loss nil="true"></insertion-loss>
    <lavg nil="true"></lavg>
    <lbias nil="true"></lbias>
    <name>28Gb/s Linear TIA</name>
    <new-part nil="true"></new-part>
    <notes></notes>
    <output nil="true"></output>
    <pdiss>Contact Sales</pdiss>
    <power>3.3V</power>
    <product-number>GX3220</product-number>
    <s11 nil="true"></s11>
    <s22 nil="true"></s22>
    <segment>Telecom</segment>
    <speed>28G</speed>
    <status>Sampling</status>
    <temp-range>Contact Sales</temp-range>
    <three-db-bw nil="true"></three-db-bw>
    <updated-at type="datetime">2009-07-22T11:46:58-07:00</updated-at>
    <vout>Contact Sales</vout>
    <vpi-3khz nil="true"></vpi-3khz>
    <wavelength-range nil="true"></wavelength-range>
    <web-access>Telecom</web-access>
  </record>
  <record>
    <bias-circuit-power-consumption nil="true"></bias-circuit-power-consumption>
    <channels type="integer">1</channels>
    <created-at type="datetime">2009-11-09T07:39:44-08:00</created-at>
    <datasheet-path></datasheet-path>
    <dc-extinction-ratio nil="true"></dc-extinction-ratio>
    <delay nil="true"></delay>
    <description>&lt;p&gt;The GX3240 is a &lt;span class="caps"&gt;MMIC&lt;/span&gt; limiter amplifier for use in 40Gb/s &lt;span class="caps"&gt;DQPSK&lt;/span&gt; optical communication receivers as well as high speed instrumentation and microwave systems.  Signals at levels as low as 60 mVpp can be amplified up to 0.7 Vpp differentially.  The design allows an eye crossing control, output voltage control, and output DC level monitoring.&lt;/p&gt;</description>
    <form>QFN</form>
    <function>Limiting</function>
    <gain>20dB</gain>
    <hidden type="boolean">false</hidden>
    <id type="integer">67</id>
    <image-path></image-path>
    <input nil="true"></input>
    <input-coupling nil="true"></input-coupling>
    <insertion-loss nil="true"></insertion-loss>
    <lavg nil="true"></lavg>
    <lbias nil="true"></lbias>
    <name>27Gb/s Limiting Amplifier</name>
    <new-part nil="true"></new-part>
    <notes></notes>
    <output nil="true"></output>
    <pdiss>500mW</pdiss>
    <power>-3.3V</power>
    <product-number>GX3240</product-number>
    <s11>-10dB to 20GHz</s11>
    <s22>-10dB to 20GHz</s22>
    <segment></segment>
    <speed>27GHz</speed>
    <status>Sampling</status>
    <temp-range>0-85C</temp-range>
    <three-db-bw>27GHz</three-db-bw>
    <updated-at type="datetime">2009-11-09T15:04:23-08:00</updated-at>
    <vout nil="true"></vout>
    <vpi-3khz nil="true"></vpi-3khz>
    <wavelength-range nil="true"></wavelength-range>
    <web-access></web-access>
  </record>
  <record>
    <bias-circuit-power-consumption nil="true"></bias-circuit-power-consumption>
    <channels type="integer">0</channels>
    <created-at type="datetime">2009-06-04T09:29:24-07:00</created-at>
    <datasheet-path></datasheet-path>
    <dc-extinction-ratio nil="true"></dc-extinction-ratio>
    <delay nil="true"></delay>
    <description>&lt;p&gt;The GX62450 is a high-performance parallel low Vpi Mach-Zender Modulator (&lt;span class="caps"&gt;MZM&lt;/span&gt;) driver designed for 100G DP-&lt;span class="caps"&gt;QPSK&lt;/span&gt; long-haul optical transmitters.&lt;/p&gt;</description>
    <form>GPPO</form>
    <function></function>
    <gain></gain>
    <hidden type="boolean">false</hidden>
    <id type="integer">62</id>
    <image-path></image-path>
    <input nil="true"></input>
    <input-coupling>AC</input-coupling>
    <insertion-loss nil="true"></insertion-loss>
    <lavg nil="true"></lavg>
    <lbias nil="true"></lbias>
    <name>4x28Gb/s MZ Modulator Driver</name>
    <new-part nil="true"></new-part>
    <notes></notes>
    <output>AC</output>
    <pdiss>12W</pdiss>
    <power>6V</power>
    <product-number>GX62450</product-number>
    <s11 nil="true"></s11>
    <s22 nil="true"></s22>
    <segment></segment>
    <speed>100G</speed>
    <status>Sampling</status>
    <temp-range>0-85C</temp-range>
    <three-db-bw nil="true"></three-db-bw>
    <updated-at type="datetime">2009-06-04T11:00:21-07:00</updated-at>
    <vout>5Vpp</vout>
    <vpi-3khz nil="true"></vpi-3khz>
    <wavelength-range nil="true"></wavelength-range>
    <web-access></web-access>
  </record>
  <record>
    <bias-circuit-power-consumption nil="true"></bias-circuit-power-consumption>
    <channels type="integer">0</channels>
    <created-at type="datetime">2009-06-04T09:31:49-07:00</created-at>
    <datasheet-path></datasheet-path>
    <dc-extinction-ratio nil="true"></dc-extinction-ratio>
    <delay nil="true"></delay>
    <description>&lt;p&gt;The GX6261 is a high-performance Mach-Zender (MZ) driver designed for 45G &lt;span class="caps"&gt;DQPSK&lt;/span&gt; metro and long-haul optical transmitters. It has an 8Vpp differential minimum output voltage.&lt;/p&gt;
&lt;p&gt;For all other information, please contact sales.&lt;/p&gt;</description>
    <form>Die</form>
    <function>MZ</function>
    <gain></gain>
    <hidden type="boolean">false</hidden>
    <id type="integer">63</id>
    <image-path></image-path>
    <input nil="true"></input>
    <input-coupling></input-coupling>
    <insertion-loss nil="true"></insertion-loss>
    <lavg nil="true"></lavg>
    <lbias nil="true"></lbias>
    <name>22.5Gb/s MZ Modulator Driver</name>
    <new-part nil="true"></new-part>
    <notes></notes>
    <output></output>
    <pdiss></pdiss>
    <power></power>
    <product-number>GX6261</product-number>
    <s11 nil="true"></s11>
    <s22 nil="true"></s22>
    <segment></segment>
    <speed>40G</speed>
    <status>Sampling</status>
    <temp-range>0-80C</temp-range>
    <three-db-bw nil="true"></three-db-bw>
    <updated-at type="datetime">2009-09-10T07:41:43-07:00</updated-at>
    <vout></vout>
    <vpi-3khz nil="true"></vpi-3khz>
    <wavelength-range nil="true"></wavelength-range>
    <web-access></web-access>
  </record>
  <record>
    <bias-circuit-power-consumption nil="true"></bias-circuit-power-consumption>
    <channels type="integer">1</channels>
    <created-at type="datetime">2008-09-29T13:00:37-07:00</created-at>
    <datasheet-path></datasheet-path>
    <dc-extinction-ratio nil="true"></dc-extinction-ratio>
    <delay nil="true"></delay>
    <description>&lt;p&gt;The HXT3101C is a compact die of 1.3 mm x 0.9&#65533;mm. The driver channel consists of an input stage and an AC-coupled &lt;span class="caps"&gt;VCSEL&lt;/span&gt; driver stage. The complete channel runs at up to 10 Gbps.&lt;/p&gt;</description>
    <form>Die</form>
    <function>VCSEL</function>
    <gain nil="true"></gain>
    <hidden type="boolean">false</hidden>
    <id type="integer">3</id>
    <image-path></image-path>
    <input nil="true"></input>
    <input-coupling nil="true"></input-coupling>
    <insertion-loss nil="true"></insertion-loss>
    <lavg>10mA</lavg>
    <lbias>8mA</lbias>
    <name>10Gb/s VCSEL Driver</name>
    <new-part nil="true"></new-part>
    <notes></notes>
    <output nil="true"></output>
    <pdiss>122mW</pdiss>
    <power>3.3V</power>
    <product-number>HXT3101</product-number>
    <s11 nil="true"></s11>
    <s22 nil="true"></s22>
    <segment>Datacom</segment>
    <speed>10G</speed>
    <status>Sampling</status>
    <temp-range>0-95C</temp-range>
    <three-db-bw nil="true"></three-db-bw>
    <updated-at type="datetime">2008-10-14T01:59:30-07:00</updated-at>
    <vout nil="true"></vout>
    <vpi-3khz nil="true"></vpi-3khz>
    <wavelength-range nil="true"></wavelength-range>
    <web-access>Datacom</web-access>
  </record>
  <record>
    <bias-circuit-power-consumption nil="true"></bias-circuit-power-consumption>
    <channels type="integer">0</channels>
    <created-at type="datetime">2009-06-18T12:18:59-07:00</created-at>
    <datasheet-path></datasheet-path>
    <dc-extinction-ratio nil="true"></dc-extinction-ratio>
    <delay nil="true"></delay>
    <description>&lt;p&gt;The iT2003 is a broadband GaAs &lt;span class="caps"&gt;MMIC&lt;/span&gt; traveling wave amplifier with a single bias supply designed for medium output power applications.  The iT2003 provides a saturated output power close to 0.5 W up to 8GHz and greater than 25dBm up to 16GHz. The average gain is 15dB.  DC power consumption is as low as 1.76W.  Input/output ports are AC coupled.&lt;/p&gt;</description>
    <form>Die</form>
    <function>BB RF</function>
    <gain>15dB</gain>
    <hidden type="boolean">false</hidden>
    <id type="integer">65</id>
    <image-path></image-path>
    <input nil="true"></input>
    <input-coupling nil="true"></input-coupling>
    <insertion-loss nil="true"></insertion-loss>
    <lavg nil="true"></lavg>
    <lbias nil="true"></lbias>
    <name>2-20GHz Power Amplifier</name>
    <new-part nil="true"></new-part>
    <notes></notes>
    <output nil="true"></output>
    <pdiss>4W</pdiss>
    <power>8V</power>
    <product-number>iT2003</product-number>
    <s11>10dB</s11>
    <s22>12dB</s22>
    <segment></segment>
    <speed>N/A</speed>
    <status>Sampling</status>
    <temp-range>0-85C</temp-range>
    <three-db-bw>20Ghz</three-db-bw>
    <updated-at type="datetime">2009-06-18T12:25:45-07:00</updated-at>
    <vout nil="true"></vout>
    <vpi-3khz nil="true"></vpi-3khz>
    <wavelength-range nil="true"></wavelength-range>
    <web-access></web-access>
  </record>
  <record>
    <bias-circuit-power-consumption nil="true"></bias-circuit-power-consumption>
    <channels type="integer">0</channels>
    <created-at type="datetime">2009-06-18T12:28:43-07:00</created-at>
    <datasheet-path></datasheet-path>
    <dc-extinction-ratio nil="true"></dc-extinction-ratio>
    <delay nil="true"></delay>
    <description>&lt;p&gt;The iT2004 is a broadband GaAs &lt;span class="caps"&gt;MMIC&lt;/span&gt; traveling wave amplifier designed for high output power applications with single bias operation.  The iT2004 provides a saturated output power of 20dBm up to 7GHz, greater than 28dBm up to 10GHz.  Average gain of 10dB with flatness of +/-1dB is provided up to 20GHz.  DC power consumption is as low as 3.1W. Input/output ports are AC coupled.&lt;/p&gt;</description>
    <form>Die</form>
    <function>BB RF</function>
    <gain>10dB</gain>
    <hidden type="boolean">false</hidden>
    <id type="integer">66</id>
    <image-path></image-path>
    <input nil="true"></input>
    <input-coupling nil="true"></input-coupling>
    <insertion-loss nil="true"></insertion-loss>
    <lavg nil="true"></lavg>
    <lbias nil="true"></lbias>
    <name>2-20GHz High Power Amplifier</name>
    <new-part nil="true"></new-part>
    <notes></notes>
    <output nil="true"></output>
    <pdiss>5W</pdiss>
    <power>8V</power>
    <product-number>iT2004</product-number>
    <s11>15dB</s11>
    <s22>12dB</s22>
    <segment></segment>
    <speed>N/A</speed>
    <status>Sampling</status>
    <temp-range>0-85C</temp-range>
    <three-db-bw>20GHz</three-db-bw>
    <updated-at type="datetime">2009-06-18T12:28:43-07:00</updated-at>
    <vout nil="true"></vout>
    <vpi-3khz nil="true"></vpi-3khz>
    <wavelength-range nil="true"></wavelength-range>
    <web-access></web-access>
  </record>
  <record>
    <bias-circuit-power-consumption>Contact Sales</bias-circuit-power-consumption>
    <channels type="integer">1</channels>
    <created-at type="datetime">2008-12-10T09:01:40-08:00</created-at>
    <datasheet-path></datasheet-path>
    <dc-extinction-ratio>20</dc-extinction-ratio>
    <delay nil="true"></delay>
    <description>&lt;p&gt;The LX8400-&lt;span class="caps"&gt;GNL&lt;/span&gt; is a revolutionary high bandwidth polymer modulator designed for 40G long-haul and ultra-long-haul optical transponders.&lt;/p&gt;</description>
    <form>GPPO</form>
    <function>MZ_Modulator</function>
    <gain nil="true"></gain>
    <hidden type="boolean">false</hidden>
    <id type="integer">54</id>
    <image-path>http://www.gigoptix.com/images/products/40g%20modulator%20picture%20small.jpg</image-path>
    <input nil="true"></input>
    <input-coupling nil="true"></input-coupling>
    <insertion-loss>6.8dB</insertion-loss>
    <lavg nil="true"></lavg>
    <lbias nil="true"></lbias>
    <name>40Gb/s DPSK Modulator</name>
    <new-part nil="true"></new-part>
    <notes></notes>
    <output nil="true"></output>
    <pdiss></pdiss>
    <power></power>
    <product-number>LX8400-GNL</product-number>
    <s11>Contact Sales</s11>
    <s22 nil="true"></s22>
    <segment></segment>
    <speed>40G</speed>
    <status>Sampling</status>
    <temp-range nil="true"></temp-range>
    <three-db-bw nil="true"></three-db-bw>
    <updated-at type="datetime">2009-11-20T11:32:38-08:00</updated-at>
    <vout nil="true"></vout>
    <vpi-3khz>4.5Vpp</vpi-3khz>
    <wavelength-range>1528-1610</wavelength-range>
    <web-access nil="true"></web-access>
  </record>
  <record>
    <bias-circuit-power-consumption>Contact Sales</bias-circuit-power-consumption>
    <channels type="integer">1</channels>
    <created-at type="datetime">2009-06-04T09:15:56-07:00</created-at>
    <datasheet-path></datasheet-path>
    <dc-extinction-ratio>20</dc-extinction-ratio>
    <delay nil="true"></delay>
    <description>&lt;p&gt;The LX8900-&lt;span class="caps"&gt;WNL&lt;/span&gt; is a revolutionary high bandwidth polymer modulator designed for 100G RF Photonics &amp;amp; Optical Communications.&lt;/p&gt;
&lt;p&gt;Please contact sales for information pertaining to the missing specs.&lt;/p&gt;</description>
    <form>W1-Connector</form>
    <function>MZ_Modulator</function>
    <gain nil="true"></gain>
    <hidden type="boolean">false</hidden>
    <id type="integer">59</id>
    <image-path>http://www.gigoptix.com/images/products/100g%20modulator%20picture%20small.jpg</image-path>
    <input nil="true"></input>
    <input-coupling nil="true"></input-coupling>
    <insertion-loss>9</insertion-loss>
    <lavg nil="true"></lavg>
    <lbias nil="true"></lbias>
    <name>100Gb/s MZ Modulator</name>
    <new-part nil="true"></new-part>
    <notes></notes>
    <output nil="true"></output>
    <pdiss></pdiss>
    <power></power>
    <product-number>LX8900-WNL</product-number>
    <s11>Contact Sales</s11>
    <s22 nil="true"></s22>
    <segment></segment>
    <speed>100G</speed>
    <status>Sampling</status>
    <temp-range nil="true"></temp-range>
    <three-db-bw nil="true"></three-db-bw>
    <updated-at type="datetime">2009-11-20T11:33:51-08:00</updated-at>
    <vout nil="true"></vout>
    <vpi-3khz>6.5</vpi-3khz>
    <wavelength-range>1528-1610</wavelength-range>
    <web-access nil="true"></web-access>
  </record>
</records>
